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1.
Clin Med Res ; 22(1): 13-18, 2024 Mar.
Artigo em Inglês | MEDLINE | ID: mdl-38609142

RESUMO

Background: Mycoplasmoides genitalium remains a difficult sexually-transmitted infection (STI) to manage due to its potential for antimicrobial resistance and post-infection sequelae. University students are especially vulnerable, as this demographic has the highest rate of STI in the United States. As a result, investigating prevalence rates and therapeutic outcomes in this population is essential to minimize future impact of M. genitalium The purpose of this study was to investigate a university student population for M. genitalium distribution and treatment outcome.Design: Retrospective chart-review of university health clinic attendees, augmented by laboratory detection of M. genitalium following therapeutic intervention.Methods: A total of 1617 student encounters at a midwestern United States university health clinic over a 28-month interval from November 2017 through February 2020 were analyzed for M. genitalium and Chlamydia trachomatis positivity rates and prevalence. Detection of these sexually-transmitted pathogens occurred by commercial RNA amplification testing. Chart review was focused on participant outcomes following initial M. genitalium detection and therapeutic intervention.Results: C. trachomatis positivity and prevalence rates were 7.05% and 9.00%, respectively, while analogous rates for M. genitalium were 7.05% and 6.51%, respectively. An average of 1.83 positive results was generated from participants infected with M. genitalium at any time, with an average of 1.17 positive results for C. trachomatis (P < 0.0002). For students treated with azithromycin, 30.3% generated a negative M. genitalium result upon follow-up, with 1g daily and 2-day 500mg dosing regimens demonstrating less efficacy than a 4-day 250mg regimen or moxifloxacin.Conclusion: Data indicate a need for molecular M. genitalium macrolide resistance determination from primary specimens in the university setting.


Assuntos
Antibacterianos , Mycoplasma genitalium , Humanos , Antibacterianos/farmacologia , Antibacterianos/uso terapêutico , Farmacorresistência Bacteriana , Macrolídeos/uso terapêutico , Estudos Retrospectivos , Universidades , Chlamydia trachomatis , Mycoplasma genitalium/genética
2.
Front Mol Biosci ; 11: 1267046, 2024.
Artigo em Inglês | MEDLINE | ID: mdl-38455761

RESUMO

Introduction: Plants have many genes encoding both alpha and beta type carbonic anhydrases. Arabidopsis has eight alpha type and six beta type carbonic anhydrase genes. Individual carbonic anhydrases are localized to specific compartments within the plant cell. In this study, we investigate the roles of αCA2 and ßCA4.1 in the growth of the plant Arabidopsis thaliana under different CO2 regimes. Methods: Here, we identified the intracellular location of αCA2 and ßCA4.1 by linking the coding region of each gene to a fluorescent tag. Tissue expression was determined by investigating GUS expression driven by the αCA2 and ßCA4.1 promoters. Finally, the role of these proteins in plant growth and photosynthesis was tested in plants with T-DNA insertions in the αCA2 and ßCA4 genes. Results: Fluorescently tagged proteins showed that αCA2 is localized to the cell wall and ßCA4.1 to the plasma membrane in plant leaves. Both proteins were expressed in roots and shoots. Plants missing either αCA2 or ßCA4 did not show any growth defects under the conditions tested in this study. However, if both αCA2 and ßCA4 were disrupted, plants had a significantly smaller above- ground fresh weight and rosette area than Wild Type (WT) plants when grown at 200 µL L-1 CO2 but not at 400 and 1,000 µL L-1 CO2. Growth of the double mutant plants at 200 µL L-1 CO2 was restoredif either αCA2 or ßCA4.1 was transformed back into the double mutant plants. Discussion: Both the cell wall and plasma membrane CAs, αCA2 and ßCA4.1 had to be knocked down to produce an effect on Arabidopsis growth and only when grown in a CO2 concentration that was significantly below ambient. This indicates that αCA2 and ßCA4.1 have overlapping functions since the growth of lines where only one of these CAs was knocked down was indistinguishable from WT growth. The growth results and cellular locations of the two CAs suggest that together, αCA2 and ßCA4.1 play an important role in the delivery of CO2 and HCO3 - to the plant cell.

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